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INVESTIGATION OF A SURFACE DIELECTRIC BARRIER DISCHARGE DEDICATED TO BOUNDARY LAYER CONTROL

机译:专用于边界层控制的表面介电壁垒放电的研究

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摘要

Use of non-thermal, atmospheric pressure plasma discharge as aerodynamic actuator for airflow boundary layer control is a promising technique and exciting research subject. Here, we present our works on this type of actuator using surface dielectric barrier discharge (DBD). Firstly, the intensity of light emitted by plasma on two sides of DBD board was measured by using a photomultiplier tube (PMT). The results suggest that light intensity increases with the thermal emission of electrode. Then, the plasma was analyzed with a high spectral resolution spectrometer; the spectra were dominated by the N_(2) molecular bands which enable the determination of gas temperature. Finally, measurements of plasma induced airflow in still air were also performed. The results showed a different velocity on the two sides of DBD board.
机译:将非热,大气压等离子体放电用作空气致动器来控制气流边界层是一项很有前途的技术,也是令人兴奋的研究课题。在这里,我们介绍使用表面介电势垒放电(DBD)的这类执行器的工作。首先,使用光电倍增管(PMT)测量DBD板两侧的等离子体发射的光强度。结果表明,光强度随着电极的热发射而增加。然后,用高光谱分辨率光谱仪分析等离子体。光谱以N_(2)分子带为主导,从而可以确定气体温度。最后,还测量了等离子体在静止空气中引起的气流。结果表明,DBD板的两侧速度不同。

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